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41 results

prog.c

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  • Forked from hardware-enablement / Rockchip upstream enablement efforts / linux
    Source project has a limited visibility.
    prog.c 27.44 KiB
    // SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
    /* Copyright (C) 2017-2018 Netronome Systems, Inc. */
    
    #define _GNU_SOURCE
    #include <errno.h>
    #include <fcntl.h>
    #include <stdarg.h>
    #include <stdio.h>
    #include <stdlib.h>
    #include <string.h>
    #include <time.h>
    #include <unistd.h>
    #include <net/if.h>
    #include <sys/types.h>
    #include <sys/stat.h>
    
    #include <linux/err.h>
    
    #include <bpf.h>
    #include <btf.h>
    #include <libbpf.h>
    
    #include "cfg.h"
    #include "main.h"
    #include "xlated_dumper.h"
    
    static const char * const attach_type_strings[] = {
    	[BPF_SK_SKB_STREAM_PARSER] = "stream_parser",
    	[BPF_SK_SKB_STREAM_VERDICT] = "stream_verdict",
    	[BPF_SK_MSG_VERDICT] = "msg_verdict",
    	[BPF_FLOW_DISSECTOR] = "flow_dissector",
    	[__MAX_BPF_ATTACH_TYPE] = NULL,
    };
    
    static enum bpf_attach_type parse_attach_type(const char *str)
    {
    	enum bpf_attach_type type;
    
    	for (type = 0; type < __MAX_BPF_ATTACH_TYPE; type++) {
    		if (attach_type_strings[type] &&
    		    is_prefix(str, attach_type_strings[type]))
    			return type;
    	}
    
    	return __MAX_BPF_ATTACH_TYPE;
    }
    
    static void print_boot_time(__u64 nsecs, char *buf, unsigned int size)
    {
    	struct timespec real_time_ts, boot_time_ts;
    	time_t wallclock_secs;
    	struct tm load_tm;
    
    	buf[--size] = '\0';
    
    	if (clock_gettime(CLOCK_REALTIME, &real_time_ts) ||
    	    clock_gettime(CLOCK_BOOTTIME, &boot_time_ts)) {
    		perror("Can't read clocks");
    		snprintf(buf, size, "%llu", nsecs / 1000000000);
    		return;
    	}
    
    	wallclock_secs = (real_time_ts.tv_sec - boot_time_ts.tv_sec) +
    		(real_time_ts.tv_nsec - boot_time_ts.tv_nsec + nsecs) /
    		1000000000;
    
    
    	if (!localtime_r(&wallclock_secs, &load_tm)) {
    		snprintf(buf, size, "%llu", nsecs / 1000000000);
    		return;
    	}
    
    	if (json_output)
    		strftime(buf, size, "%s", &load_tm);
    	else
    		strftime(buf, size, "%FT%T%z", &load_tm);
    }
    
    static int prog_fd_by_tag(unsigned char *tag)
    {
    	struct bpf_prog_info info = {};
    	__u32 len = sizeof(info);
    	unsigned int id = 0;
    	int err;
    	int fd;
    
    	while (true) {
    		err = bpf_prog_get_next_id(id, &id);
    		if (err) {
    			p_err("%s", strerror(errno));
    			return -1;
    		}
    
    		fd = bpf_prog_get_fd_by_id(id);
    		if (fd < 0) {
    			p_err("can't get prog by id (%u): %s",
    			      id, strerror(errno));
    			return -1;
    		}
    
    		err = bpf_obj_get_info_by_fd(fd, &info, &len);
    		if (err) {
    			p_err("can't get prog info (%u): %s",
    			      id, strerror(errno));
    			close(fd);
    			return -1;
    		}
    
    		if (!memcmp(tag, info.tag, BPF_TAG_SIZE))
    			return fd;
    
    		close(fd);
    	}
    }
    
    int prog_parse_fd(int *argc, char ***argv)
    {
    	int fd;
    
    	if (is_prefix(**argv, "id")) {
    		unsigned int id;
    		char *endptr;
    
    		NEXT_ARGP();
    
    		id = strtoul(**argv, &endptr, 0);
    		if (*endptr) {
    			p_err("can't parse %s as ID", **argv);
    			return -1;
    		}
    		NEXT_ARGP();
    
    		fd = bpf_prog_get_fd_by_id(id);
    		if (fd < 0)
    			p_err("get by id (%u): %s", id, strerror(errno));
    		return fd;
    	} else if (is_prefix(**argv, "tag")) {
    		unsigned char tag[BPF_TAG_SIZE];
    
    		NEXT_ARGP();
    
    		if (sscanf(**argv, BPF_TAG_FMT, tag, tag + 1, tag + 2,
    			   tag + 3, tag + 4, tag + 5, tag + 6, tag + 7)
    		    != BPF_TAG_SIZE) {
    			p_err("can't parse tag");
    			return -1;
    		}
    		NEXT_ARGP();
    
    		return prog_fd_by_tag(tag);
    	} else if (is_prefix(**argv, "pinned")) {
    		char *path;
    
    		NEXT_ARGP();
    
    		path = **argv;
    		NEXT_ARGP();
    
    		return open_obj_pinned_any(path, BPF_OBJ_PROG);
    	}
    
    	p_err("expected 'id', 'tag' or 'pinned', got: '%s'?", **argv);
    	return -1;
    }
    
    static void show_prog_maps(int fd, u32 num_maps)
    {
    	struct bpf_prog_info info = {};
    	__u32 len = sizeof(info);
    	__u32 map_ids[num_maps];
    	unsigned int i;
    	int err;
    
    	info.nr_map_ids = num_maps;
    	info.map_ids = ptr_to_u64(map_ids);
    
    	err = bpf_obj_get_info_by_fd(fd, &info, &len);
    	if (err || !info.nr_map_ids)
    		return;
    
    	if (json_output) {
    		jsonw_name(json_wtr, "map_ids");
    		jsonw_start_array(json_wtr);
    		for (i = 0; i < info.nr_map_ids; i++)
    			jsonw_uint(json_wtr, map_ids[i]);
    		jsonw_end_array(json_wtr);
    	} else {
    		printf("  map_ids ");
    		for (i = 0; i < info.nr_map_ids; i++)
    			printf("%u%s", map_ids[i],
    			       i == info.nr_map_ids - 1 ? "" : ",");
    	}
    }
    
    static void print_prog_json(struct bpf_prog_info *info, int fd)
    {
    	char *memlock;
    
    	jsonw_start_object(json_wtr);
    	jsonw_uint_field(json_wtr, "id", info->id);
    	if (info->type < ARRAY_SIZE(prog_type_name))
    		jsonw_string_field(json_wtr, "type",
    				   prog_type_name[info->type]);
    	else
    		jsonw_uint_field(json_wtr, "type", info->type);
    
    	if (*info->name)
    		jsonw_string_field(json_wtr, "name", info->name);
    
    	jsonw_name(json_wtr, "tag");
    	jsonw_printf(json_wtr, "\"" BPF_TAG_FMT "\"",
    		     info->tag[0], info->tag[1], info->tag[2], info->tag[3],
    		     info->tag[4], info->tag[5], info->tag[6], info->tag[7]);
    
    	jsonw_bool_field(json_wtr, "gpl_compatible", info->gpl_compatible);
    
    	print_dev_json(info->ifindex, info->netns_dev, info->netns_ino);
    
    	if (info->load_time) {
    		char buf[32];
    
    		print_boot_time(info->load_time, buf, sizeof(buf));
    
    		/* Piggy back on load_time, since 0 uid is a valid one */
    		jsonw_name(json_wtr, "loaded_at");
    		jsonw_printf(json_wtr, "%s", buf);
    		jsonw_uint_field(json_wtr, "uid", info->created_by_uid);
    	}
    
    	jsonw_uint_field(json_wtr, "bytes_xlated", info->xlated_prog_len);
    
    	if (info->jited_prog_len) {
    		jsonw_bool_field(json_wtr, "jited", true);
    		jsonw_uint_field(json_wtr, "bytes_jited", info->jited_prog_len);
    	} else {
    		jsonw_bool_field(json_wtr, "jited", false);
    	}
    
    	memlock = get_fdinfo(fd, "memlock");
    	if (memlock)
    		jsonw_int_field(json_wtr, "bytes_memlock", atoi(memlock));
    	free(memlock);
    
    	if (info->nr_map_ids)
    		show_prog_maps(fd, info->nr_map_ids);
    
    	if (!hash_empty(prog_table.table)) {
    		struct pinned_obj *obj;
    
    		jsonw_name(json_wtr, "pinned");
    		jsonw_start_array(json_wtr);
    		hash_for_each_possible(prog_table.table, obj, hash, info->id) {
    			if (obj->id == info->id)
    				jsonw_string(json_wtr, obj->path);
    		}
    		jsonw_end_array(json_wtr);
    	}
    
    	jsonw_end_object(json_wtr);
    }
    
    static void print_prog_plain(struct bpf_prog_info *info, int fd)
    {
    	char *memlock;
    
    	printf("%u: ", info->id);
    	if (info->type < ARRAY_SIZE(prog_type_name))
    		printf("%s  ", prog_type_name[info->type]);
    	else
    		printf("type %u  ", info->type);
    
    	if (*info->name)
    		printf("name %s  ", info->name);
    
    	printf("tag ");
    	fprint_hex(stdout, info->tag, BPF_TAG_SIZE, "");
    	print_dev_plain(info->ifindex, info->netns_dev, info->netns_ino);
    	printf("%s", info->gpl_compatible ? "  gpl" : "");
    	printf("\n");
    
    	if (info->load_time) {
    		char buf[32];
    
    		print_boot_time(info->load_time, buf, sizeof(buf));
    
    		/* Piggy back on load_time, since 0 uid is a valid one */
    		printf("\tloaded_at %s  uid %u\n", buf, info->created_by_uid);
    	}
    
    	printf("\txlated %uB", info->xlated_prog_len);
    
    	if (info->jited_prog_len)
    		printf("  jited %uB", info->jited_prog_len);
    	else
    		printf("  not jited");
    
    	memlock = get_fdinfo(fd, "memlock");
    	if (memlock)
    		printf("  memlock %sB", memlock);
    	free(memlock);
    
    	if (info->nr_map_ids)
    		show_prog_maps(fd, info->nr_map_ids);
    
    	if (!hash_empty(prog_table.table)) {
    		struct pinned_obj *obj;
    
    		hash_for_each_possible(prog_table.table, obj, hash, info->id) {
    			if (obj->id == info->id)
    				printf("\n\tpinned %s", obj->path);
    		}
    	}
    
    	printf("\n");
    }
    
    static int show_prog(int fd)
    {
    	struct bpf_prog_info info = {};
    	__u32 len = sizeof(info);
    	int err;
    
    	err = bpf_obj_get_info_by_fd(fd, &info, &len);
    	if (err) {
    		p_err("can't get prog info: %s", strerror(errno));
    		return -1;
    	}
    
    	if (json_output)
    		print_prog_json(&info, fd);
    	else
    		print_prog_plain(&info, fd);
    
    	return 0;
    }
    
    static int do_show(int argc, char **argv)
    {
    	__u32 id = 0;
    	int err;
    	int fd;
    
    	if (show_pinned)
    		build_pinned_obj_table(&prog_table, BPF_OBJ_PROG);
    
    	if (argc == 2) {
    		fd = prog_parse_fd(&argc, &argv);
    		if (fd < 0)
    			return -1;
    
    		return show_prog(fd);
    	}
    
    	if (argc)
    		return BAD_ARG();
    
    	if (json_output)
    		jsonw_start_array(json_wtr);
    	while (true) {
    		err = bpf_prog_get_next_id(id, &id);
    		if (err) {
    			if (errno == ENOENT) {
    				err = 0;
    				break;
    			}
    			p_err("can't get next program: %s%s", strerror(errno),
    			      errno == EINVAL ? " -- kernel too old?" : "");
    			err = -1;
    			break;
    		}
    
    		fd = bpf_prog_get_fd_by_id(id);
    		if (fd < 0) {
    			if (errno == ENOENT)
    				continue;
    			p_err("can't get prog by id (%u): %s",
    			      id, strerror(errno));
    			err = -1;
    			break;
    		}
    
    		err = show_prog(fd);
    		close(fd);
    		if (err)
    			break;
    	}
    
    	if (json_output)
    		jsonw_end_array(json_wtr);
    
    	return err;
    }
    
    static int do_dump(int argc, char **argv)
    {
    	unsigned int finfo_rec_size, linfo_rec_size, jited_linfo_rec_size;
    	void *func_info = NULL, *linfo = NULL, *jited_linfo = NULL;
    	unsigned int nr_finfo, nr_linfo = 0, nr_jited_linfo = 0;
    	struct bpf_prog_linfo *prog_linfo = NULL;
    	unsigned long *func_ksyms = NULL;
    	struct bpf_prog_info info = {};
    	unsigned int *func_lens = NULL;
    	const char *disasm_opt = NULL;
    	unsigned int nr_func_ksyms;
    	unsigned int nr_func_lens;
    	struct dump_data dd = {};
    	__u32 len = sizeof(info);
    	struct btf *btf = NULL;
    	unsigned int buf_size;
    	char *filepath = NULL;
    	bool opcodes = false;
    	bool visual = false;
    	char func_sig[1024];
    	unsigned char *buf;
    	bool linum = false;
    	__u32 *member_len;
    	__u64 *member_ptr;
    	ssize_t n;
    	int err;
    	int fd;
    
    	if (is_prefix(*argv, "jited")) {
    		if (disasm_init())
    			return -1;
    
    		member_len = &info.jited_prog_len;
    		member_ptr = &info.jited_prog_insns;
    	} else if (is_prefix(*argv, "xlated")) {
    		member_len = &info.xlated_prog_len;
    		member_ptr = &info.xlated_prog_insns;
    	} else {
    		p_err("expected 'xlated' or 'jited', got: %s", *argv);
    		return -1;
    	}
    	NEXT_ARG();
    
    	if (argc < 2)
    		usage();
    
    	fd = prog_parse_fd(&argc, &argv);
    	if (fd < 0)
    		return -1;
    
    	if (is_prefix(*argv, "file")) {
    		NEXT_ARG();
    		if (!argc) {
    			p_err("expected file path");
    			return -1;
    		}
    
    		filepath = *argv;
    		NEXT_ARG();
    	} else if (is_prefix(*argv, "opcodes")) {
    		opcodes = true;
    		NEXT_ARG();
    	} else if (is_prefix(*argv, "visual")) {
    		visual = true;
    		NEXT_ARG();
    	} else if (is_prefix(*argv, "linum")) {
    		linum = true;
    		NEXT_ARG();
    	}
    
    	if (argc) {
    		usage();
    		return -1;
    	}
    
    	err = bpf_obj_get_info_by_fd(fd, &info, &len);
    	if (err) {
    		p_err("can't get prog info: %s", strerror(errno));
    		return -1;
    	}
    
    	if (!*member_len) {
    		p_info("no instructions returned");
    		close(fd);
    		return 0;
    	}
    
    	buf_size = *member_len;
    
    	buf = malloc(buf_size);
    	if (!buf) {
    		p_err("mem alloc failed");
    		close(fd);
    		return -1;
    	}
    
    	nr_func_ksyms = info.nr_jited_ksyms;
    	if (nr_func_ksyms) {
    		func_ksyms = malloc(nr_func_ksyms * sizeof(__u64));
    		if (!func_ksyms) {
    			p_err("mem alloc failed");
    			close(fd);
    			goto err_free;
    		}
    	}
    
    	nr_func_lens = info.nr_jited_func_lens;
    	if (nr_func_lens) {
    		func_lens = malloc(nr_func_lens * sizeof(__u32));
    		if (!func_lens) {
    			p_err("mem alloc failed");
    			close(fd);
    			goto err_free;
    		}
    	}
    
    	nr_finfo = info.nr_func_info;
    	finfo_rec_size = info.func_info_rec_size;
    	if (nr_finfo && finfo_rec_size) {
    		func_info = malloc(nr_finfo * finfo_rec_size);
    		if (!func_info) {
    			p_err("mem alloc failed");
    			close(fd);
    			goto err_free;
    		}
    	}
    
    	linfo_rec_size = info.line_info_rec_size;
    	if (info.nr_line_info && linfo_rec_size && info.btf_id) {
    		nr_linfo = info.nr_line_info;
    		linfo = malloc(nr_linfo * linfo_rec_size);
    		if (!linfo) {
    			p_err("mem alloc failed");
    			close(fd);
    			goto err_free;
    		}
    	}
    
    	jited_linfo_rec_size = info.jited_line_info_rec_size;
    	if (info.nr_jited_line_info &&
    	    jited_linfo_rec_size &&
    	    info.nr_jited_ksyms &&
    	    info.nr_jited_func_lens &&
    	    info.btf_id) {
    		nr_jited_linfo = info.nr_jited_line_info;
    		jited_linfo = malloc(nr_jited_linfo * jited_linfo_rec_size);
    		if (!jited_linfo) {
    			p_err("mem alloc failed");
    			close(fd);
    			goto err_free;
    		}
    	}
    
    	memset(&info, 0, sizeof(info));
    
    	*member_ptr = ptr_to_u64(buf);
    	*member_len = buf_size;
    	info.jited_ksyms = ptr_to_u64(func_ksyms);
    	info.nr_jited_ksyms = nr_func_ksyms;
    	info.jited_func_lens = ptr_to_u64(func_lens);
    	info.nr_jited_func_lens = nr_func_lens;
    	info.nr_func_info = nr_finfo;
    	info.func_info_rec_size = finfo_rec_size;
    	info.func_info = ptr_to_u64(func_info);
    	info.nr_line_info = nr_linfo;
    	info.line_info_rec_size = linfo_rec_size;
    	info.line_info = ptr_to_u64(linfo);
    	info.nr_jited_line_info = nr_jited_linfo;
    	info.jited_line_info_rec_size = jited_linfo_rec_size;
    	info.jited_line_info = ptr_to_u64(jited_linfo);
    
    	err = bpf_obj_get_info_by_fd(fd, &info, &len);
    	close(fd);
    	if (err) {
    		p_err("can't get prog info: %s", strerror(errno));
    		goto err_free;
    	}
    
    	if (*member_len > buf_size) {
    		p_err("too many instructions returned");
    		goto err_free;
    	}
    
    	if (info.nr_jited_ksyms > nr_func_ksyms) {
    		p_err("too many addresses returned");
    		goto err_free;
    	}
    
    	if (info.nr_jited_func_lens > nr_func_lens) {
    		p_err("too many values returned");
    		goto err_free;
    	}
    
    	if (info.nr_func_info != nr_finfo) {
    		p_err("incorrect nr_func_info %d vs. expected %d",
    		      info.nr_func_info, nr_finfo);
    		goto err_free;
    	}
    
    	if (info.func_info_rec_size != finfo_rec_size) {
    		p_err("incorrect func_info_rec_size %d vs. expected %d",
    		      info.func_info_rec_size, finfo_rec_size);
    		goto err_free;
    	}
    
    	if (linfo && info.nr_line_info != nr_linfo) {
    		p_err("incorrect nr_line_info %u vs. expected %u",
    		      info.nr_line_info, nr_linfo);
    		goto err_free;
    	}
    
    	if (info.line_info_rec_size != linfo_rec_size) {
    		p_err("incorrect line_info_rec_size %u vs. expected %u",
    		      info.line_info_rec_size, linfo_rec_size);
    		goto err_free;
    	}
    
    	if (jited_linfo && info.nr_jited_line_info != nr_jited_linfo) {
    		p_err("incorrect nr_jited_line_info %u vs. expected %u",
    		      info.nr_jited_line_info, nr_jited_linfo);
    		goto err_free;
    	}
    
    	if (info.jited_line_info_rec_size != jited_linfo_rec_size) {
    		p_err("incorrect jited_line_info_rec_size %u vs. expected %u",
    		      info.jited_line_info_rec_size, jited_linfo_rec_size);
    		goto err_free;
    	}
    
    	if ((member_len == &info.jited_prog_len &&
    	     info.jited_prog_insns == 0) ||
    	    (member_len == &info.xlated_prog_len &&
    	     info.xlated_prog_insns == 0)) {
    		p_err("error retrieving insn dump: kernel.kptr_restrict set?");
    		goto err_free;
    	}
    
    	if (info.btf_id && btf__get_from_id(info.btf_id, &btf)) {
    		p_err("failed to get btf");
    		goto err_free;
    	}
    
    	if (nr_linfo) {
    		prog_linfo = bpf_prog_linfo__new(&info);
    		if (!prog_linfo)
    			p_info("error in processing bpf_line_info.  continue without it.");
    	}
    
    	if (filepath) {
    		fd = open(filepath, O_WRONLY | O_CREAT | O_TRUNC, 0600);
    		if (fd < 0) {
    			p_err("can't open file %s: %s", filepath,
    			      strerror(errno));
    			goto err_free;
    		}
    
    		n = write(fd, buf, *member_len);
    		close(fd);
    		if (n != *member_len) {
    			p_err("error writing output file: %s",
    			      n < 0 ? strerror(errno) : "short write");
    			goto err_free;
    		}
    
    		if (json_output)
    			jsonw_null(json_wtr);
    	} else if (member_len == &info.jited_prog_len) {
    		const char *name = NULL;
    
    		if (info.ifindex) {
    			name = ifindex_to_bfd_params(info.ifindex,
    						     info.netns_dev,
    						     info.netns_ino,
    						     &disasm_opt);
    			if (!name)
    				goto err_free;
    		}
    
    		if (info.nr_jited_func_lens && info.jited_func_lens) {
    			struct kernel_sym *sym = NULL;
    			struct bpf_func_info *record;
    			char sym_name[SYM_MAX_NAME];
    			unsigned char *img = buf;
    			__u64 *ksyms = NULL;
    			__u32 *lens;
    			__u32 i;
    
    			if (info.nr_jited_ksyms) {
    				kernel_syms_load(&dd);
    				ksyms = (__u64 *) info.jited_ksyms;
    			}
    
    			if (json_output)
    				jsonw_start_array(json_wtr);
    
    			lens = (__u32 *) info.jited_func_lens;
    			for (i = 0; i < info.nr_jited_func_lens; i++) {
    				if (ksyms) {
    					sym = kernel_syms_search(&dd, ksyms[i]);
    					if (sym)
    						sprintf(sym_name, "%s", sym->name);
    					else
    						sprintf(sym_name, "0x%016llx", ksyms[i]);
    				} else {
    					strcpy(sym_name, "unknown");
    				}
    
    				if (func_info) {
    					record = func_info + i * finfo_rec_size;
    					btf_dumper_type_only(btf, record->type_id,
    							     func_sig,
    							     sizeof(func_sig));
    				}
    
    				if (json_output) {
    					jsonw_start_object(json_wtr);
    					if (func_info && func_sig[0] != '\0') {
    						jsonw_name(json_wtr, "proto");
    						jsonw_string(json_wtr, func_sig);
    					}
    					jsonw_name(json_wtr, "name");
    					jsonw_string(json_wtr, sym_name);
    					jsonw_name(json_wtr, "insns");
    				} else {
    					if (func_info && func_sig[0] != '\0')
    						printf("%s:\n", func_sig);
    					printf("%s:\n", sym_name);
    				}
    
    				disasm_print_insn(img, lens[i], opcodes,
    						  name, disasm_opt, btf,
    						  prog_linfo, ksyms[i], i,
    						  linum);
    
    				img += lens[i];
    
    				if (json_output)
    					jsonw_end_object(json_wtr);
    				else
    					printf("\n");
    			}
    
    			if (json_output)
    				jsonw_end_array(json_wtr);
    		} else {
    			disasm_print_insn(buf, *member_len, opcodes, name,
    					  disasm_opt, btf, NULL, 0, 0, false);
    		}
    	} else if (visual) {
    		if (json_output)
    			jsonw_null(json_wtr);
    		else
    			dump_xlated_cfg(buf, *member_len);
    	} else {
    		kernel_syms_load(&dd);
    		dd.nr_jited_ksyms = info.nr_jited_ksyms;
    		dd.jited_ksyms = (__u64 *) info.jited_ksyms;
    		dd.btf = btf;
    		dd.func_info = func_info;
    		dd.finfo_rec_size = finfo_rec_size;
    		dd.prog_linfo = prog_linfo;
    
    		if (json_output)
    			dump_xlated_json(&dd, buf, *member_len, opcodes,
    					 linum);
    		else
    			dump_xlated_plain(&dd, buf, *member_len, opcodes,
    					  linum);
    		kernel_syms_destroy(&dd);
    	}
    
    	free(buf);
    	free(func_ksyms);
    	free(func_lens);
    	free(func_info);
    	free(linfo);
    	free(jited_linfo);
    	bpf_prog_linfo__free(prog_linfo);
    	return 0;
    
    err_free:
    	free(buf);
    	free(func_ksyms);
    	free(func_lens);
    	free(func_info);
    	free(linfo);
    	free(jited_linfo);
    	bpf_prog_linfo__free(prog_linfo);
    	return -1;
    }
    
    static int do_pin(int argc, char **argv)
    {
    	int err;
    
    	err = do_pin_any(argc, argv, bpf_prog_get_fd_by_id);
    	if (!err && json_output)
    		jsonw_null(json_wtr);
    	return err;
    }
    
    struct map_replace {
    	int idx;
    	int fd;
    	char *name;
    };
    
    static int map_replace_compar(const void *p1, const void *p2)
    {
    	const struct map_replace *a = p1, *b = p2;
    
    	return a->idx - b->idx;
    }
    
    static int parse_attach_detach_args(int argc, char **argv, int *progfd,
    				    enum bpf_attach_type *attach_type,
    				    int *mapfd)
    {
    	if (!REQ_ARGS(3))
    		return -EINVAL;
    
    	*progfd = prog_parse_fd(&argc, &argv);
    	if (*progfd < 0)
    		return *progfd;
    
    	*attach_type = parse_attach_type(*argv);
    	if (*attach_type == __MAX_BPF_ATTACH_TYPE) {
    		p_err("invalid attach/detach type");
    		return -EINVAL;
    	}
    
    	if (*attach_type == BPF_FLOW_DISSECTOR) {
    		*mapfd = -1;
    		return 0;
    	}
    
    	NEXT_ARG();
    	if (!REQ_ARGS(2))
    		return -EINVAL;
    
    	*mapfd = map_parse_fd(&argc, &argv);
    	if (*mapfd < 0)
    		return *mapfd;
    
    	return 0;
    }
    
    static int do_attach(int argc, char **argv)
    {
    	enum bpf_attach_type attach_type;
    	int err, progfd;
    	int mapfd;
    
    	err = parse_attach_detach_args(argc, argv,
    				       &progfd, &attach_type, &mapfd);
    	if (err)
    		return err;
    
    	err = bpf_prog_attach(progfd, mapfd, attach_type, 0);
    	if (err) {
    		p_err("failed prog attach to map");
    		return -EINVAL;
    	}
    
    	if (json_output)
    		jsonw_null(json_wtr);
    	return 0;
    }
    
    static int do_detach(int argc, char **argv)
    {
    	enum bpf_attach_type attach_type;
    	int err, progfd;
    	int mapfd;
    
    	err = parse_attach_detach_args(argc, argv,
    				       &progfd, &attach_type, &mapfd);
    	if (err)
    		return err;
    
    	err = bpf_prog_detach2(progfd, mapfd, attach_type);
    	if (err) {
    		p_err("failed prog detach from map");
    		return -EINVAL;
    	}
    
    	if (json_output)
    		jsonw_null(json_wtr);
    	return 0;
    }
    
    static int load_with_options(int argc, char **argv, bool first_prog_only)
    {
    	enum bpf_attach_type expected_attach_type;
    	struct bpf_object_open_attr attr = {
    		.prog_type	= BPF_PROG_TYPE_UNSPEC,
    	};
    	struct map_replace *map_replace = NULL;
    	struct bpf_program *prog = NULL, *pos;
    	unsigned int old_map_fds = 0;
    	const char *pinmaps = NULL;
    	struct bpf_object *obj;
    	struct bpf_map *map;
    	const char *pinfile;
    	unsigned int i, j;
    	__u32 ifindex = 0;
    	int idx, err;
    
    	if (!REQ_ARGS(2))
    		return -1;
    	attr.file = GET_ARG();
    	pinfile = GET_ARG();
    
    	while (argc) {
    		if (is_prefix(*argv, "type")) {
    			char *type;
    
    			NEXT_ARG();
    
    			if (attr.prog_type != BPF_PROG_TYPE_UNSPEC) {
    				p_err("program type already specified");
    				goto err_free_reuse_maps;
    			}
    			if (!REQ_ARGS(1))
    				goto err_free_reuse_maps;
    
    			/* Put a '/' at the end of type to appease libbpf */
    			type = malloc(strlen(*argv) + 2);
    			if (!type) {
    				p_err("mem alloc failed");
    				goto err_free_reuse_maps;
    			}
    			*type = 0;
    			strcat(type, *argv);
    			strcat(type, "/");
    
    			err = libbpf_prog_type_by_name(type, &attr.prog_type,
    						       &expected_attach_type);
    			free(type);
    			if (err < 0) {
    				p_err("unknown program type '%s'", *argv);
    				goto err_free_reuse_maps;
    			}
    			NEXT_ARG();
    		} else if (is_prefix(*argv, "map")) {
    			void *new_map_replace;
    			char *endptr, *name;
    			int fd;
    
    			NEXT_ARG();
    
    			if (!REQ_ARGS(4))
    				goto err_free_reuse_maps;
    
    			if (is_prefix(*argv, "idx")) {
    				NEXT_ARG();
    
    				idx = strtoul(*argv, &endptr, 0);
    				if (*endptr) {
    					p_err("can't parse %s as IDX", *argv);
    					goto err_free_reuse_maps;
    				}
    				name = NULL;
    			} else if (is_prefix(*argv, "name")) {
    				NEXT_ARG();
    
    				name = *argv;
    				idx = -1;
    			} else {
    				p_err("expected 'idx' or 'name', got: '%s'?",
    				      *argv);
    				goto err_free_reuse_maps;
    			}
    			NEXT_ARG();
    
    			fd = map_parse_fd(&argc, &argv);
    			if (fd < 0)
    				goto err_free_reuse_maps;
    
    			new_map_replace = reallocarray(map_replace,
    						       old_map_fds + 1,
    						       sizeof(*map_replace));
    			if (!new_map_replace) {
    				p_err("mem alloc failed");
    				goto err_free_reuse_maps;
    			}
    			map_replace = new_map_replace;
    
    			map_replace[old_map_fds].idx = idx;
    			map_replace[old_map_fds].name = name;
    			map_replace[old_map_fds].fd = fd;
    			old_map_fds++;
    		} else if (is_prefix(*argv, "dev")) {
    			NEXT_ARG();
    
    			if (ifindex) {
    				p_err("offload device already specified");
    				goto err_free_reuse_maps;
    			}
    			if (!REQ_ARGS(1))
    				goto err_free_reuse_maps;
    
    			ifindex = if_nametoindex(*argv);
    			if (!ifindex) {
    				p_err("unrecognized netdevice '%s': %s",
    				      *argv, strerror(errno));
    				goto err_free_reuse_maps;
    			}
    			NEXT_ARG();
    		} else if (is_prefix(*argv, "pinmaps")) {
    			NEXT_ARG();
    
    			if (!REQ_ARGS(1))
    				goto err_free_reuse_maps;
    
    			pinmaps = GET_ARG();
    		} else {
    			p_err("expected no more arguments, 'type', 'map' or 'dev', got: '%s'?",
    			      *argv);
    			goto err_free_reuse_maps;
    		}
    	}
    
    	obj = __bpf_object__open_xattr(&attr, bpf_flags);
    	if (IS_ERR_OR_NULL(obj)) {
    		p_err("failed to open object file");
    		goto err_free_reuse_maps;
    	}
    
    	bpf_object__for_each_program(pos, obj) {
    		enum bpf_prog_type prog_type = attr.prog_type;
    
    		if (attr.prog_type == BPF_PROG_TYPE_UNSPEC) {
    			const char *sec_name = bpf_program__title(pos, false);
    
    			err = libbpf_prog_type_by_name(sec_name, &prog_type,
    						       &expected_attach_type);
    			if (err < 0) {
    				p_err("failed to guess program type based on section name %s\n",
    				      sec_name);
    				goto err_close_obj;
    			}
    		}
    
    		bpf_program__set_ifindex(pos, ifindex);
    		bpf_program__set_type(pos, prog_type);
    		bpf_program__set_expected_attach_type(pos, expected_attach_type);
    	}
    
    	qsort(map_replace, old_map_fds, sizeof(*map_replace),
    	      map_replace_compar);
    
    	/* After the sort maps by name will be first on the list, because they
    	 * have idx == -1.  Resolve them.
    	 */
    	j = 0;
    	while (j < old_map_fds && map_replace[j].name) {
    		i = 0;
    		bpf_map__for_each(map, obj) {
    			if (!strcmp(bpf_map__name(map), map_replace[j].name)) {
    				map_replace[j].idx = i;
    				break;
    			}
    			i++;
    		}
    		if (map_replace[j].idx == -1) {
    			p_err("unable to find map '%s'", map_replace[j].name);
    			goto err_close_obj;
    		}
    		j++;
    	}
    	/* Resort if any names were resolved */
    	if (j)
    		qsort(map_replace, old_map_fds, sizeof(*map_replace),
    		      map_replace_compar);
    
    	/* Set ifindex and name reuse */
    	j = 0;
    	idx = 0;
    	bpf_map__for_each(map, obj) {
    		if (!bpf_map__is_offload_neutral(map))
    			bpf_map__set_ifindex(map, ifindex);
    
    		if (j < old_map_fds && idx == map_replace[j].idx) {
    			err = bpf_map__reuse_fd(map, map_replace[j++].fd);
    			if (err) {
    				p_err("unable to set up map reuse: %d", err);
    				goto err_close_obj;
    			}
    
    			/* Next reuse wants to apply to the same map */
    			if (j < old_map_fds && map_replace[j].idx == idx) {
    				p_err("replacement for map idx %d specified more than once",
    				      idx);
    				goto err_close_obj;
    			}
    		}
    
    		idx++;
    	}
    	if (j < old_map_fds) {
    		p_err("map idx '%d' not used", map_replace[j].idx);
    		goto err_close_obj;
    	}
    
    	set_max_rlimit();
    
    	err = bpf_object__load(obj);
    	if (err) {
    		p_err("failed to load object file");
    		goto err_close_obj;
    	}
    
    	err = mount_bpffs_for_pin(pinfile);
    	if (err)
    		goto err_close_obj;
    
    	if (first_prog_only) {
    		prog = bpf_program__next(NULL, obj);
    		if (!prog) {
    			p_err("object file doesn't contain any bpf program");
    			goto err_close_obj;
    		}
    
    		err = bpf_obj_pin(bpf_program__fd(prog), pinfile);
    		if (err) {
    			p_err("failed to pin program %s",
    			      bpf_program__title(prog, false));
    			goto err_close_obj;
    		}
    	} else {
    		err = bpf_object__pin_programs(obj, pinfile);
    		if (err) {
    			p_err("failed to pin all programs");
    			goto err_close_obj;
    		}
    	}
    
    	if (pinmaps) {
    		err = bpf_object__pin_maps(obj, pinmaps);
    		if (err) {
    			p_err("failed to pin all maps");
    			goto err_unpin;
    		}
    	}
    
    	if (json_output)
    		jsonw_null(json_wtr);
    
    	bpf_object__close(obj);
    	for (i = 0; i < old_map_fds; i++)
    		close(map_replace[i].fd);
    	free(map_replace);
    
    	return 0;
    
    err_unpin:
    	if (first_prog_only)
    		unlink(pinfile);
    	else
    		bpf_object__unpin_programs(obj, pinfile);
    err_close_obj:
    	bpf_object__close(obj);
    err_free_reuse_maps:
    	for (i = 0; i < old_map_fds; i++)
    		close(map_replace[i].fd);
    	free(map_replace);
    	return -1;
    }
    
    static int do_load(int argc, char **argv)
    {
    	return load_with_options(argc, argv, true);
    }
    
    static int do_loadall(int argc, char **argv)
    {
    	return load_with_options(argc, argv, false);
    }
    
    static int do_help(int argc, char **argv)
    {
    	if (json_output) {
    		jsonw_null(json_wtr);
    		return 0;
    	}
    
    	fprintf(stderr,
    		"Usage: %s %s { show | list } [PROG]\n"
    		"       %s %s dump xlated PROG [{ file FILE | opcodes | visual | linum }]\n"
    		"       %s %s dump jited  PROG [{ file FILE | opcodes | linum }]\n"
    		"       %s %s pin   PROG FILE\n"
    		"       %s %s { load | loadall } OBJ  PATH \\\n"
    		"                         [type TYPE] [dev NAME] \\\n"
    		"                         [map { idx IDX | name NAME } MAP]\\\n"
    		"                         [pinmaps MAP_DIR]\n"
    		"       %s %s attach PROG ATTACH_TYPE [MAP]\n"
    		"       %s %s detach PROG ATTACH_TYPE [MAP]\n"
    		"       %s %s tracelog\n"
    		"       %s %s help\n"
    		"\n"
    		"       " HELP_SPEC_MAP "\n"
    		"       " HELP_SPEC_PROGRAM "\n"
    		"       TYPE := { socket | kprobe | kretprobe | classifier | action |\n"
    		"                 tracepoint | raw_tracepoint | xdp | perf_event | cgroup/skb |\n"
    		"                 cgroup/sock | cgroup/dev | lwt_in | lwt_out | lwt_xmit |\n"
    		"                 lwt_seg6local | sockops | sk_skb | sk_msg | lirc_mode2 |\n"
    		"                 sk_reuseport | flow_dissector |\n"
    		"                 cgroup/bind4 | cgroup/bind6 | cgroup/post_bind4 |\n"
    		"                 cgroup/post_bind6 | cgroup/connect4 | cgroup/connect6 |\n"
    		"                 cgroup/sendmsg4 | cgroup/sendmsg6 }\n"
    		"       ATTACH_TYPE := { msg_verdict | skb_verdict | skb_parse |\n"
    		"                        flow_dissector }\n"
    		"       " HELP_SPEC_OPTIONS "\n"
    		"",
    		bin_name, argv[-2], bin_name, argv[-2], bin_name, argv[-2],
    		bin_name, argv[-2], bin_name, argv[-2], bin_name, argv[-2],
    		bin_name, argv[-2], bin_name, argv[-2], bin_name, argv[-2]);
    
    	return 0;
    }
    
    static const struct cmd cmds[] = {
    	{ "show",	do_show },
    	{ "list",	do_show },
    	{ "help",	do_help },
    	{ "dump",	do_dump },
    	{ "pin",	do_pin },
    	{ "load",	do_load },
    	{ "loadall",	do_loadall },
    	{ "attach",	do_attach },
    	{ "detach",	do_detach },
    	{ "tracelog",	do_tracelog },
    	{ 0 }
    };
    
    int do_prog(int argc, char **argv)
    {
    	return cmd_select(cmds, argc, argv, do_help);
    }